Abstract

The unadenylylated, manganese form of glutamine synthetase (L-glutamate: ammonia ligase (ADP forming), EC 6.3.1.2 from Escherichia coli catalyzes a novel, AMP-dependent (reversible) synthesis of pyrophosphate and L-glutamate from orthophosphate and L-glutamine: Formula (See Text). The hydrolysis of the L-glutamine amide bond is coupled to the stoichiometric synthesis of pyrophosphate, although as PPi accumulates, additional hydrolysis of L-glutamine occurs in a secondary reaction catalyzed by the [manganese x enzyme x AMP x PPi] complex. The synthesis of PPi probably occurs at the subunit catalytic site in the positions normally occupied by the beta, gamma-phosphates of ATP. To promote PPi synthesis, AMP apparently binds to the subunit catalytic site rather than to the allosteric inhibitor site; equilibrium binding results suggest that Pi directs the binding of AMP to the active site. In this reaction, Mg2+ will not substitute for Mn2+, and adenylylated glutamine synthetase is inactive. Pyrophosphate is synthesized by the unadenylylated, manganese enzyme at approximately 2% of the rate of that of ATP in the reverse biosynthetic reaction. If P1 is replaced by arsenate, the enzymatic rate of the AMP-supported hydrolysis of L-glutamine is 100-fold faster than is PPi synthesis and is one-half the rate of the ADP-supported, irreversible arsenolysis of L-glutamine. This latter activity also is supported by GMP and IMP, suggesting that the catalytic site of glutamine synthetase has a rather broad specificity for the nucleotide base. The reactions supported by AMP directly relate to the mechanism of glutamine synthetase catalysis.

Highlights

  • From the Section on Protein Chemistry, Laboratory of Biochemistry, NatwnaI Heart, Lung, and Blood Institute, National Institutes of Health, Bethesda, Maryland 20205

  • The unadenylylated, manganese form of glutamine synthetase (L-glutamate: ammonia ligase (ADP forming), EC 6.3.1.2 from Escherichia coli catalyzes a novel, AMP-dependent synthesis of pyrophosphate andL-glutamate from orthophosphate and L-gluw2+,. tamine: Gln + 2 Pi

  • Apparently binds to the subunit catalytic site rather than to thaellosteric inhibitor site; equilibriumbinding results suggest that Pi directs the binding of AMP to the active site

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Summary

RESULTS

AMP may bind exclusivelyto the nucleotide substrate site of obtained from different commercial sources (P-L Biochemithe enzyme subunit under the conditions of Reactions 2, 3, cals,Calbiochem, and Sigma ChemicalCo.), the maximum and 4. 2 with arsenate present varied from 7 to[43] units/mg at 37°C

MATERIALS A N D METHODS
ATP PPI
Charcoal adsorption of reaction products
FRACTION NUMBER
Reaction mixture
Minus AMP
Unadenylylated glutamine synthetase activity
Nucleotide and divalent cation support
Unadenylylated glutamine synthetase and effectors present
AMP AMP
Full Text
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